Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a screen almost completely opaque to 200 keV electrons. Then by covering both slits with a layer of amorphous material and carrying out the experiment in a conventional transmission electron microscope equipped with an energy filter we can demonstrate that the diffraction pattern, taken by selecting the elastically scattered electrons, shows the presence of interference fringes, but with a bimodal envelope which can be accounted for by taking into account the non-constant thickness of the deposited layer. However, the intensity of the inelastically scattered electrons in the diffraction plane is very broad and at the limit of detectability. Therefor...
The Young-Feynman two-hole interferometer is widely used to present the electron wave-particle duali...
A conventional transmission electron microscope, equipped with a fast recording system able to measu...
The diffraction of electrons by natural crystal structures was first observed in 1927. Before the st...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
We have realized a which-way experiment closely resembling the original Feynman’s proposal exploitin...
The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought ...
Current nanotechnology techniques make possible the preparation of slits in the submicrometer range ...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Two nanosized slits are opened by focused ion beam milling in a membrane to observe, with a transmis...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
By means of a focused ion beam apparatus slits about 90 nm in width, 1500 nm in length and with a pi...
In this short Note we report a method for producing samples containing two nano-sized slits suitable...
none4A primary electron beam of a transmission electron microscope is scattered into secondary beams...
The Young-Feynman two-hole interferometer is widely used to present the electron wave-particle duali...
A conventional transmission electron microscope, equipped with a fast recording system able to measu...
The diffraction of electrons by natural crystal structures was first observed in 1927. Before the st...
Modern nanotechnology tools allowed us to prepare slits of 90 nm width and 450 nm spacing in a scree...
We have realized a which-way experiment closely resembling the original Feynman’s proposal exploitin...
The key features of quantum mechanics are vividly illustrated by the Young-Feynman two-slit thought ...
Current nanotechnology techniques make possible the preparation of slits in the submicrometer range ...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
Two nanosized slits are opened by focused ion beam milling in a membrane to observe, with a transmis...
Quantum mechanics has fundamentally changed the way scientists think about the world. Quantum mechan...
By means of a focused ion beam apparatus slits about 90 nm in width, 1500 nm in length and with a pi...
In this short Note we report a method for producing samples containing two nano-sized slits suitable...
none4A primary electron beam of a transmission electron microscope is scattered into secondary beams...
The Young-Feynman two-hole interferometer is widely used to present the electron wave-particle duali...
A conventional transmission electron microscope, equipped with a fast recording system able to measu...
The diffraction of electrons by natural crystal structures was first observed in 1927. Before the st...